全文下载:2014020152
张萧丹, 王永, 马继, 李桂村, 陈克正*
(青岛科技大学 材料科学与工程学院,山东 青岛 266042)
摘要: 采用一步水热法,通过控制反应物中的阳离子(Na+)浓度,制备出了多种赤铁矿(αFe2O3)层级结构。通过X射线衍射(XRD)、场发射扫描电子显微镜(SEM)、电化学测试等手段对产物的相组成、形貌结构和锂电性能进行了表征,并对其生长机理进行了探讨。研究表明:当反应物浓度较低(c(FeCl3)=04 mol·L-1,c(NaCl)=02 mol·L-1)时,不同反应时间下的产物均为纯相αFe2O3,并且呈现出笼状层级结构;而当反应物的浓度较高(c(FeCl3)=08 mol·L-1,c(NaCl)=04 mol·L-1)时,随反应时间的延长,产物由花状结构的FeOOH和αFe2O3的混合物逐渐演进为鱼卵状αFe2O3产物。进一步研究发现:反应体系中阳离子的浓度改变对产物的形貌结构以及相组成产生了较大的影响。此外,电化学测试研究表明:两种反应物浓度下的笼状和鱼卵状αFe2O3产物均具有优良的储锂性能,可用作锂离子电池的电极材料。
关键词: 赤铁矿; 阳离子调制; 层级结构; 储锂性能
中图分类号: TB 321文献标志码: A
Controllable Fabrication of Cationmodulated Hematite Hierarchical Structures and Their Lithium Storage Properties
ZHANG Xiaodan, WANG Yong, MA Ji, LI Guicun, CHEN Kezheng
(College of Materials Science and Engineering, Qingdao University of Science and Technology, Qingdao 266042, China)
Abstract: Various hematite (αFe2O3) hierarchical structures were fabricated through a onestep hydrothermal method by controlling the cation (Na+) concentration in reactants. Phase composition, morphologies and structures, and lithium storage properties of the products were characterized by Xray diffraction (XRD), scanning electron microscopy (SEM), and electrochemical testing. Their formation mechanism was also investigated. It was demonstrated that, after different reaction time, pure hematite products with cagelike hierarchical structures could always be obtained when the reactant concentration was low (c(FeCl3)=04 mol·L-1,c(NaCl)=02 mol·L-1). In contrast, at relatively high concentration (c(FeCl3)=08 mol·L-1,c(NaCl)=04 mol·L-1), the products exhibited flowerlike structure with a blend of FeOOH and αFe2O3 phases, and finally evolved into roelike hematite pure phase as prolonging the reaction time. Further, it was found that the alteration of the cation concentration in the reaction system exerted a great impact on the topography structure and phase composition of the products. Additionally, the electrochemical tests showed that the cagelike and roelike αFe2O3 products, deriving from two reactions under different reactant concentrations, both possessed superior lithium storage properties, indicative of their potential application as electrode materials in lithium ion batteries.
Key words: hematite; cationmodulate; hierarchical structure; lithium storage properties
收稿日期: 20130109
基金项目: 国家自然科学基金项目(51072087).
作者简介: 张萧丹(1988—),女,硕士研究生.*通信联系人.